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在微型化和高通量格式下培养分枝杆菌属突变体,以表征其生长、植物甾醇转化能力和对甾体产物的抗性。

Cultivation of Mycolicibacterium spp. Mutants in Miniaturized and High-Throughput Format to Characterize Their Growth, Phytosterol Conversion Ability, and Resistance to the Steroid Products.

机构信息

Department of Biotechnology and Nanomedicine, SINTEF Industry, Trondheim, Norway.

出版信息

Methods Mol Biol. 2023;2704:185-200. doi: 10.1007/978-1-0716-3385-4_11.

Abstract

This chapter describes methods for cultivation and characterization of the growth of Mycolicibacterium spp. mutants in a microbioreactor system in the presence of steroids and/or phytosterols followed by high-throughput mass spectrometry analysis to describe their ability to convert phytosterols into the target steroid androstenedione (AD). We focus on Mycolicibacterium neoaurum NRRL B-3805 ΔkstD which can convert phytosterol into androstenedione (AD) as one of its major steroid products, and mutants thereof with increased tolerance towards this end-product. By using BioLector 48-well plates with optodes at the bottom of each well, bacterial growth can be monitored online despite the turbidity of the growth medium resulting from non-dissolved phytosterol and steroid particles. To cope with the large number of samples that accumulate during growth experiments in microbioreactors and similar formats (e.g., microtiter plates), protocols for extraction and subsequent RapidFire-MS analysis are presented. This reduces the analysis time per sample to 10 s from 10 min required for regular LC-MS analysis.

摘要

本章描述了在甾醇和/或植物固醇存在下,在微生物反应器系统中培养和表征分枝杆菌属突变体生长的方法,然后进行高通量质谱分析,以描述它们将植物固醇转化为目标甾体雄烯二酮 (AD) 的能力。我们专注于分枝杆菌属新亚种 NRRL B-3805 ΔkstD,它可以将植物固醇转化为雄烯二酮 (AD),作为其主要甾体产物之一,以及对该终产物具有更高耐受性的突变体。通过使用带有底部光学传感器的 BioLector 48 孔板,即使由于未溶解的植物固醇和甾体颗粒导致生长培养基混浊,也可以在线监测细菌生长。为了应对微生物反应器和类似格式(例如微孔板)中生长实验中积累的大量样品,我们提出了提取和随后的 RapidFire-MS 分析的方案。这将每个样品的分析时间从常规 LC-MS 分析所需的 10 分钟缩短到 10 秒。

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